Molecular Evolution of Paralogous Cold Shock Proteins in E. coli: A Study of Asymmetric Divergence and Protein Functional Networks.

IF 2.4 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Biotechnology Pub Date : 2025-01-08 DOI:10.1007/s12033-024-01333-0
Alankar Roy, Sujay Ray
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Abstract

Nine homologous Cold Shock Proteins (Csps) have been recognized in the E.coli Cold Shock Domain gene family. These Csps function as RNA chaperones. This study aims to establish the evolutionary relationships among these genes by identifying and classifying their paralogous counterparts. It focuses on the physicochemical, structural, and functional analysis of the genes to explore the phylogeny of the Csp gene family. Computational tools were employed for protein molecular modeling, conformational analysis, functional studies, and duplication-divergence assessments. The research also examined amino acid conservation, protein mutations, domain-motif patterns, and evolutionary residue communities to better understand residual interactions, evolutionary coupling, and co-evolution. H33, M5, W11 and F53 residues were highly conserved within the protein family. It was further seen that residues M5, G17, G58, G61, P62, A64, V67 were intolerant to any kind of mutation whereas G3, D40, G41, Y42, S44, T54, T68, S69 were most tolerable towards substitutions. The study of residue communities displayed that the strongest residue coupling was observed in N13, F18, S27, F31, and W11. It was observed that all the gene pairs except CspF/CspH had new motifs generated over time. It was ascertained that all the gene pairs underwent asymmetric expression divergence after duplication. The Ka/ Ks ratio also revealed that all residues undertook neutral and purifying selection pressure. New functions were seen to develop in gene pairs evident from generation of new motifs. The discovery of new motifs and functions in Csps highlights their adaptive versatility, crucial for E. coli's resilience to environmental stressors and valuable for understanding bacterial stress response mechanisms. These findings will pave the way for future investigations into Csp evolution, with potential applications in microbial ecology and antimicrobial strategy development.

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大肠杆菌旁系冷休克蛋白的分子进化:不对称分化和蛋白功能网络的研究。
在大肠杆菌冷休克域基因家族中已经发现了9个同源冷休克蛋白(Csps)。这些csp起着RNA伴侣的作用。本研究旨在通过对这些基因的同源对应物进行识别和分类,建立它们之间的进化关系。重点从基因的理化、结构和功能分析等方面探讨Csp基因家族的系统发育。计算工具用于蛋白质分子建模、构象分析、功能研究和重复-差异评估。该研究还研究了氨基酸保护、蛋白质突变、结构域-基序模式和进化残基群落,以更好地理解残基相互作用、进化耦合和共同进化。H33、M5、W11和F53残基在蛋白家族中高度保守。结果表明,M5、G17、G58、G61、P62、A64、V67对突变均不耐受,而G3、D40、G41、Y42、S44、T54、T68、S69对突变最耐受。残基群落研究表明,N13、F18、S27、F31和W11的残基偶联性最强。结果表明,随着时间的推移,除CspF/CspH外,其余基因对均产生了新的基序。结果表明,所有基因对在复制后均发生不对称表达分化。Ka/ Ks比值也表明所有残基都承受了中性和净化选择压力。新的功能在基因对中得到发展,从新基序的产生就可以看出。Csps中新的基序和功能的发现突出了它们的适应性多功能性,这对大肠杆菌对环境应激源的恢复能力至关重要,对理解细菌应激反应机制具有重要价值。这些发现将为未来研究Csp进化铺平道路,并在微生物生态学和抗菌策略开发中具有潜在的应用价值。
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来源期刊
Molecular Biotechnology
Molecular Biotechnology 医学-生化与分子生物学
CiteScore
4.10
自引率
3.80%
发文量
165
审稿时长
6 months
期刊介绍: Molecular Biotechnology publishes original research papers on the application of molecular biology to both basic and applied research in the field of biotechnology. Particular areas of interest include the following: stability and expression of cloned gene products, cell transformation, gene cloning systems and the production of recombinant proteins, protein purification and analysis, transgenic species, developmental biology, mutation analysis, the applications of DNA fingerprinting, RNA interference, and PCR technology, microarray technology, proteomics, mass spectrometry, bioinformatics, plant molecular biology, microbial genetics, gene probes and the diagnosis of disease, pharmaceutical and health care products, therapeutic agents, vaccines, gene targeting, gene therapy, stem cell technology and tissue engineering, antisense technology, protein engineering and enzyme technology, monoclonal antibodies, glycobiology and glycomics, and agricultural biotechnology.
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